Search Result
Results for "
muscular
" in MedChemExpress (MCE) Product Catalog:
3
Biochemical Assay Reagents
4
Isotope-Labeled Compounds
Cat. No. |
Product Name |
Target |
Research Areas |
Chemical Structure |
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- HY-101459
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Drug Derivative
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Metabolic Disease
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RTC13 restores dystrophin expression and improves muscle function in the mdx mouse model for Duchenne muscular dystrophy (DMD) .
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-
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- HY-108753
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AVI 4658
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Arp2/3 Complex
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Metabolic Disease
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Eteplirsen (AVI 4658) is a synthetic antisense oligonucleotide. Eteplirsen can be used for Duchenne muscular dystrophy research .
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-
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- HY-P99588
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MYO-029
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TGF-β Receptor
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Metabolic Disease
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Stamulumab (MYO-029) is a recombinant human IgG1λ antibody that binds to myostatin and neutralizes its activity by preventing binding to its endogenous high-affinity receptor ActRIIB. Stamulumab leads to muscle fiber hypertrophy and not hyperplasia in SCID mice. Stamulumab has the potential for Becker muscular dystrophy (BMD), facioscapulohumeral dystrophy (FSHD), and limb-girdle muscular dystrophy (LGMD) research .
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- HY-122631
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CDK
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Others
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TG693 is an orally active inhibitor of CLK1. TG693 regulates the mutated exon 31 of the dystrophin gene in vivo. TG693 is used in Duchenne muscular dystrophy (DMD) research .
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-
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- HY-P99441
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SRK-015
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TGF-beta/Smad
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Neurological Disease
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Apitegromab (SRK-015) is an anti-promyostatin monoclonal antibody. Apitegromab can be used for the research of neuromuscular disease including spinal muscular atrophy .
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-
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- HY-P99857
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PF-06252616
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TGF-beta/Smad
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Metabolic Disease
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Domagrozumab is an anti-myostatin humanized monoclonal antibody with a KD value of 2.6 pM for human myostatin. Domagrozumab induces muscle anabolic activity. Domagrozumab can be used in research of duchenne muscular dystrophy (DMD) .
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- HY-127137
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Adenylosuccinate; Aspartyl adenylate
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Endogenous Metabolite
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Metabolic Disease
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Adenylosuccinic acid (Adenylosuccinate; Aspartyl adenylate) is a purine ribonucleoside monophosphate and plays a role in nucleotide cycle metabolite. Adenylosuccinic acid can be converted into fumaric acid through adenylosuccinate lyase. Adenylosuccinic acid has the potential for the study of duchenne muscular dystrophy(DMD) .
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- HY-124041
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Drug Metabolite
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p-Hydroxybestatin is an active metabolite of Bestatinc (HY-B0134) that can be found in serum from muscular dystrophic patients and from healthy subjects dosed with Bestatin .
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- HY-122604
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DNA/RNA Synthesis
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Neurological Disease
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PF-DcpSi is a mRNA decapping scavenger enzyme (DcpS) inhibitor (IC50: 0.11 nM). PF-DcpSi (30 mg/kg,i.p.) ameliorates the disease phenotype in a mice model of spinal muscular atrophy (SMA) .
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- HY-W019878
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β-Lipotropin 61-91
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Opioid Receptor
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Cardiovascular Disease
Neurological Disease
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β-Endorphin, rat (β-Lipotropin 61-91), a neuropeptide, is involved in cardiovascular regulation. β-Endorphin, rat induces marked, prolonged muscular rigidity and immobility similar to a catatonic state in rats .
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- HY-132611
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SRP-4053
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Arp2/3 Complex
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Others
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Golodirsen (SRP-4053) is a phosphorodiamidate morpholino oligomer (PMO) that specifically targets exon 53 of dystrophin pre-mRNA. Golodirsen can be used for the research of Duchenne muscular dystrophy (DMD) .
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-
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- HY-150077
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Microtubule/Tubulin
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Others
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Utrophin modulator 1 is a potent utrophin modulator (upregulates utrophin protein levels), with an EC50 of 0.11 μM. Utrophin modulator 1 can be used in study of duchenne muscular dystrophy (DMD) .
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- HY-127137A
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Adenylosuccinate tetraammonium; Aspartyl adenylate tetraammonium
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Endogenous Metabolite
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Metabolic Disease
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Adenylosuccinic acid tetraammonium (Adenylosuccinate; Aspartyl adenylate) is an orally active purine ribonucleoside monophosphate and plays a role in nucleotide cycle metabolite. Adenylosuccinic acid tetraammonium can be converted into fumaric acid through adenylosuccinate lyase. Adenylosuccinic acid tetraammonium has the potential for the study of duchenne muscular dystrophy(DMD) .
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- HY-134377
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ASP0367; MA-0211
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PPAR
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Metabolic Disease
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Bocidelpar is a modulator of peroxisome proliferator-activated receptor delta (PPAR-δ). Bocidelpar improves mitochondrial biogenesis and function in Duchenne Muscular Dystrophy (DMD) muscle cells .
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- HY-109017
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-
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- HY-161050
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HDAC
Apoptosis
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Cancer
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YSR734 (Compound 21) is a covalent HDAC inhibitor with IC50 values of 110 nM, 154 nM, and 143 nM for HDAC1, HDAC2, and HDAC3, respectively. YSR734 can induce apoptosis in leukemia cells. YSR734 can induce myoblast differentiation and is used in the study of Duchenne muscular dystrophy .
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- HY-17614
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SMT C1100; BMN 195; VOX-C1100
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Cytochrome P450
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Others
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Ezutromid (SMT C1100) is a first-in-class, orally active benzoxazole utrophin modulator with an EC50 of 0.91 μM. Ezutromid can be used for the research Duchenne muscular dystrophy (DMD). Ezutromid inhibits CYP1A2 enzymic activity in human liver microsomes (HLM) with an IC50 of 5.4 μM .
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- HY-134577
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Adrenergic Receptor
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Endocrinology
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Clorprenaline is a potent agonist of β2-adrenergic. Clorprenaline promotes animal muscular mass growth and decreases fat accumulation. Clorprenaline is a potential new lean meat-boosting feed additive .
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- HY-150078
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Microtubule/Tubulin
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Others
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OX01914 is a water-solube and permeable utrophin modulator (upregulates utrophin protein levels), with an EC50 of 20.5 μM. OX01914 can be used in study of duchenne muscular dystrophy (DMD) .
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- HY-132584A
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SRP-4045 sodium
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Arp2/3 Complex
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Others
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Casimersen sodium is an antisense oligonucleotide of the phosphorodiamidate morpholino oligomer subclass. Casimersen sodium binds to exon 45 of dystrophin pre-mRNA, restores the open-reading frame (by skipping exon 45) resulting in the production of an internally truncated but functional dystrophin protein. Casimersen sodium can be used for the research of Duchenne muscular dystrophy (DMD) .
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- HY-134577R
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Adrenergic Receptor
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Endocrinology
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Clorprenaline (Standard) is the analytical standard of Clorprenaline. This product is intended for research and analytical applications. Clorprenaline is a potent agonist of β2-adrenergic. Clorprenaline promotes animal muscular mass growth and decreases fat accumulation. Clorprenaline is a potential new lean meat-boosting feed additive .
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- HY-132584
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SRP-4045
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Arp2/3 Complex
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Others
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Casimersen (SRP-4045) is an antisense oligonucleotide of the phosphorodiamidate morpholino oligomer subclass. Casimersen binds to exon 45 of dystrophin pre-mRNA, restores the open-reading frame (by skipping exon 45) resulting in the production of an internally truncated but functional dystrophin protein. Casimersen can be used for the research of Duchenne muscular dystrophy (DMD) .
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-
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- HY-14415
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REV-ERB
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Neurological Disease
Metabolic Disease
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SR8278 is a REV-ERBα antagonist and inhibits the REV-ERBα transcriptional repression activity with an EC50 of 0.47 μM. SR8278 is used to regulate the metabolism in organisms and study biological rhythm. SR8278 also can be used for the research of Duchenne muscular dystrophy and Alzheimer's disease .
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- HY-152219
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CDK
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Infection
Cancer
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CLK1-IN-2 is metabolically stable Clk1 inhibitor. CLK1-IN-2 has selectivity for Clk1 with an IC50 value of 1.7 nM. CLK1-IN-2 can be used for the research of tumour, Duchenne's muscular dystrophy and viral infections such as HIV-1 and influenza .
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- HY-132586
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NS-065/NCNP-01
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Nucleoside Antimetabolite/Analog
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Metabolic Disease
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Viltolarsen (NS-065/NCNP-01) is a phosphorodiamidate morpholino antisense oligonucleotide. Viltolarsen binds to exon 53 of the dystrophin mRNA precursor and restores the amino acid open-reading frame by skipping exon 53, resulting in the production of a shortened dystrophin protein that contains essential functional portions. Viltolarsen has the potential for Duchenne muscular dystrophy (DMD) research .
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- HY-124713
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DNA/RNA Synthesis
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Neurological Disease
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ML372 inhibits survival motor neuron (SMN) protein ubiquitination, increases SMN protein stability without affecting mRNA expression. ML372 improves spinal muscular atrophy (SMA) in mice. ML372 is brain penetrant and has a reasonable exposure and half-life in vivo .
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- HY-111520
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DNA/RNA Synthesis
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Neurological Disease
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NVS-SM2 is a potent, orally active and brain-penetrant SMN2 splicing enhancer with an EC50 of 2 nM for SMN. NVS-SM2 enhances U1-pre-mRNA association. NVS-SM2 promotes exon 7 inclusion and restores normal survival motor neuron (SMN) protein expression. NVS-SM2 can be used for spinal muscular atrophy (SMA) research .
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- HY-132586A
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NS-065/NCNP-01 sodium
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Nucleoside Antimetabolite/Analog
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Metabolic Disease
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Viltolarsen (NS-065/NCNP-01) sodium is a phosphorodiamidate morpholino antisense oligonucleotide. Viltolarsen sodium binds to exon 53 of the dystrophin mRNA precursor and restores the amino acid open-reading frame by skipping exon 53, resulting in the production of a shortened dystrophin protein that contains essential functional portions. Viltolarsen sodium has the potential for Duchenne muscular dystrophy (DMD) research .
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- HY-19620A
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LMI070 hydrochloride; NVS-SM1 hydrochloride
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DNA/RNA Synthesis
Potassium Channel
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Cancer
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Branaplam (LMI070; NVS-SM1) hydrochloride is a highly potent, selective and orally active survival motor neuron-2 (SMN2) splicing modulator with an EC50 of 20 nM for SMN. Branaplam hydrochloride inhibits human-ether-a-go-go-related gene (hERG) with an IC50 of 6.3 μM. Branaplam hydrochloride elevates full-length SMN protein and extends survival in a severe spinal muscular atrophy (SMA) mouse model .
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- HY-19620
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Branaplam
Maximum Cited Publications
12 Publications Verification
LMI070; NVS-SM1
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DNA/RNA Synthesis
Potassium Channel
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Cancer
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Branaplam (LMI070; NVS-SM1) is a highly potent, selective and orally active survival motor neuron-2 (SMN2) splicing modulator with an EC50 of 20 nM for SMN. Branaplam inhibits human-ether-a-go-go-related gene (hERG) with an IC50 of 6.3 μM. Branaplam elevates full-length SMN protein and extends survival in a severe spinal muscular atrophy (SMA) mouse model .
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- HY-153403
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Biochemical Assay Reagents
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Others
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Activated A Subunit can be used in the synthesis of exon jumping oligomer conjugates. The oligomer conjugates complement selected target sites in the human anti-muscular atrophy protein gene and induce exon 51 jumping. It can be used for research of muscular dystrophy .
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- HY-153404
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Biochemical Assay Reagents
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Others
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Activated C Subunit can be used in the synthesis of exon jumping oligomer conjugates. The oligomer conjugates complement selected target sites in the human anti-muscular atrophy protein gene and induce exon 51 jumping. It can be used for research of muscular dystrophy .
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- HY-153407
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Others
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Others
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NCP2 Anchor can be used in the synthesis of exon jumping oligomer conjugates. The oligomer conjugates complement selected target sites in the human anti-muscular atrophy protein gene and induce exon 52 jumping. It can be used for research of muscular dystrophy .
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- HY-153406
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Biochemical Assay Reagents
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Others
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Activated T Subunit can be used in the synthesis of exon jumping oligomer conjugates. The oligomer conjugates complement selected target sites in the human anti-muscular atrophy protein gene and induce exon 51 jumping. It can be used for research of muscular dystrophy .
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- HY-153405
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Biochemical Assay Reagents
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Others
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Activated DPG Subunit can be used in the synthesis of exon jumping oligomer conjugates. The oligomer conjugates complement selected target sites in the human anti-muscular atrophy protein gene and induce exon 51 jumping. It can be used for research of muscular dystrophy .
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- HY-114898
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Mitochondrial Metabolism
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Cardiovascular Disease
Neurological Disease
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ML404 (Compound 38) is an inhibitor of the mitochondrial permeability transition pore (mtPTP), which can suppress mitochondrial swelling (EC50=4.9 nM) and only disrupts mitochondrial coupling (an adverse effect) at concentrations > 100 μM. ML404 can be utilized in research related to multiple sclerosis (MS), amyotrophic lateral sclerosis (ALS), Alzheimer's disease (AD), muscular dystrophies (MD), myocardial infarction, and stroke .
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- HY-153402
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Biochemical Assay Reagents
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Others
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Activated EG3 Tail can be used in the synthesis of exon jumping oligomer conjugates. The oligomer conjugates complement selected target sites in the human anti-muscular atrophy protein gene and induce exon 51 jumping. It can be used for research of muscular dystrophy .
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- HY-B1104
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(±)-Indoprofe
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Akt
AMPK
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Inflammation/Immunology
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Indoprofen ((±)-Indoprofe) is a nonsteroidal anti-inflammatory drug used in the study of spinal muscular atrophy.
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-
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- HY-16361A
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CGP3466B; CGP3446 maleate; TCH346 maleate
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Apoptosis
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Neurological Disease
Metabolic Disease
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Omigapil maleate, an orally bioavailable GAPDH nitrosylation inhibitor, abrogates Aβ1-42-induced tau acetylation, memory impairment, and locomotor dysfunction in mice. Omigapil maleate has the potential for the research of Alzheimer's disease . Omigapil maleate (CGP3446B maleate) is a apoptosis inhibitor. Omigapil maleate can be used for the research of congenital muscular dystrophy (CMD) . Omigapil (maleate) is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
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- HY-101792
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RG7800
5 Publications Verification
RO6885247
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DNA/RNA Synthesis
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Others
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RG7800 is a SMN2 splicing modifier. RG7800 has the potential for spinal muscular atrophy treatment.
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-
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- HY-114081A
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HC-3 chloride
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Choline Kinase
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Neurological Disease
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Hemicholinium chloride (HC-3) is a choline kinase (ChoK) inhibitor. Hemicholinium chloride Hemicholinium chloride induces ataxia and muscular weakness .
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- HY-112633
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DNA/RNA Synthesis
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Others
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SMN-C3 is an orally active SMN2 splicing modulator and has the potential to treat spinal muscular atrophy (SMA).
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-
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- HY-D1005A25
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PEG-PPG-PEG, 5750 (Averag)
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Biochemical Assay Reagents
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Others
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Poloxamer 403 P123 is block polymer of polyoxyethylene and polyoxypropylene with average molecular mass of 5750. Poloxamer 403 P123 exhibits muscular toxicity .
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- HY-149127
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ASC-JM17; ALZ-003
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Keap1-Nrf2
Androgen Receptor
HSP
Mitophagy
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Metabolic Disease
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Rosolutamide (ASC-JM17), a curcumin analog, is an orally active, potent Nrf1 and Nrf2 activator. Rosolutamide activates Nrf1, Nrf2 and heat shock factor 1 (Hsf1), thereby activating the expression of proteasome subunits, antioxidant enzymes and molecular chaperones. Rosolutamide degrades the polyglutamine (polyQ) androgen receptor (AR) via the ubiquitin-proteasome pathway and improves motor function in mouse models of spinal and bulbar muscular atrophy (SBMA). Rosolutamide improves mitochondrial function and promotes autophagy, decreases mutant protein aggregates, and attenuates intracellular/mitochondrial reactive oxygen species (ROS) levels .
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- HY-B1104R
-
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Akt
AMPK
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Inflammation/Immunology
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Indoprofen (Standard) is the analytical standard of Indoprofen. This product is intended for research and analytical applications. Indoprofen ((±)-Indoprofe) is a nonsteroidal anti-inflammatory drug used in the study of spinal muscular atrophy.
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-
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- HY-B0262S
-
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Sodium Channel
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Metabolic Disease
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Methocarbamol-d5 is deuterium labeled Methocarbamol. Methocarbamol is an orally active central muscle relaxant and blocks muscular Nav1.4 channel[1].
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-
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- HY-14842
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ITF-2357
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HDAC
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Inflammation/Immunology
Cancer
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Givinostat (ITF-2357) is a HDAC inhibitor with an IC50 of 198 and 157 nM for HDAC1 and HDAC3, respectively. Givinostat can be used for Duchenne muscular dystrophy (DMD) research .
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-
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- HY-W272699
-
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Others
|
Metabolic Disease
|
Utrophin activator-1 (compound 3) is an utrophin upregulator with an EC50 of 1.8 μM. Utrophin activator-1 can be used for Duchenne muscular dystrophy research .
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- HY-145724
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Kyndrisa; GSK2402968A; PRO051
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DNA/RNA Synthesis
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Others
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Drisapersen, a antisense oligonucleotide, induces exon 51 skipping during dystrophin pre-mRNA splicing and allows synthesis of partially functional dystrophin in Duchenne muscular dystrophy (DMD) patients with amenable mutations.
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-
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- HY-109134
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TAS-205 free base
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Prostaglandin Receptor
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Metabolic Disease
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Pizuglanstat (compound 3) is a prostaglandin D synthase inhibitor with an IC50 of 76 nM for human hematopoietic prostaglandin D synthases (H-PGDS). Pizuglanstat can be used for myodegenerative disease research, such as muscular dystrophy .
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- HY-P10242
-
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TGF-beta/Smad
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Others
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Myostatin inhibitory peptide 7 is a 23 amino acids peptide, which is derived from amino acids 21 to 43 of the mouse myostatin prodomain. Myostatin inhibitory peptide 7 inhibits myostatin with Kd of 29.7 nM. Myostatin inhibitory peptide 7 can be used for researches of muscle atrophic disorders .
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- HY-107901
-
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PPAR
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Cardiovascular Disease
Metabolic Disease
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Pparδ agonist 1 is a PPAR-δ agonist, with an EC50 of 5.06 nM, used in the research of PPAR-delta related diseases, such as mitochondrial diseases, muscular diseases, vascular diseases, demyelinating diseases and metabolic diseases.
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- HY-N1072
-
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Calcium Channel
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Inflammation/Immunology
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Wilforgine is a bioactive sesquiterpene alkaloid in Tripterygium wilfordii Hook. F. Wilforgine can induce microstructural and ultrastructural changes in the muscles of Mythimna separata larvae, and the sites of action are proposed to be calcium receptors or channels in the muscular system .
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- HY-101792A
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RO6885247 tetrahydrochloride
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DNA/RNA Synthesis
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Neurological Disease
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RG7800 hydrochloride is an orally active SMN2 splicing modulator, with EC1.5xs of 23 nM and 87 nM for SMN2 splicing and SMN protein; RG7800 hydrochloride has the potential to treat spinal muscular atrophy.
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- HY-150237
-
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DNA/RNA Synthesis
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Others
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FITC-labeled Drisapersen (sodium) is Drisapersen labeled with FITC. Drisapersen, a antisense oligonucleotide, induces exon 51 skipping during dystrophin pre-mRNA splicing and allows synthesis of partially functional dystrophin in Duchenne muscular dystrophy (DMD) patients with amenable mutations.
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- HY-48959
-
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Integrin
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Metabolic Disease
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α7β1 integrin modulator-1 is a potent α7β1 integrin modulator. α7β1 integrin modulator-1 has the potential for the research of muscular dystrophy .
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- HY-171277
-
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Casein Kinase
p38 MAPK
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Cancer
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Casein kinase 1δ-IN-27 (Compound 8) is the inhibitor for casein kinase 1 that inhibits CK1α, CK1δ, CK1ε, and p38α with IC50s of 22, 16.5, 9.41 and 14.8 nM, respectively. Casein kinase 1δ-IN-27 inhibits the DUX4 expression with an IC50 of 10 nM .
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- HY-18102
-
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Androgen Receptor
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Others
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GLPG0492 is a non-steroidal selective androgen receptor modulator (potency 12 nM). GLPG0492 has the potential for the research of musculo-skeletal diseases such as sarcopenia and cachexia .
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- HY-119460
-
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ERK
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Neurological Disease
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Cuspin-1 is a upregulator of Survival of Motor Neuron protein (SMN). Cuspin-1 upregulates SMN expression post-transcriptionally, and increases the phosphorylation of Erk. Cuspin-1 can be used for research of neurodegenerative disease, such as spinal muscular atrophy (SMA) .
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- HY-138121
-
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Cannabinoid Receptor
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Inflammation/Immunology
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PSB-KD107 is an agonist of the cannabinoid activated orphan G-protein-coupled receptor GPR18, and PSB-KD107 has anti-inflammatory activity. PSB-KD107 can be used in the study of Duchenne muscular dystrophy .
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- HY-B0262
-
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Sodium Channel
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Neurological Disease
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Methocarbamol is an orally active central muscle relaxant and blocks muscular Nav1.4 channel. Methocarbamol reversibly affects voltage dependence of inactivation of Nav1.4 channel. Methocarbamol has the potential for muscle spasms and pain syndromes research .
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- HY-114739
-
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PPAR
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Metabolic Disease
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MA-0204 is a potent, highly selective and orally available peroxisome proliferator activated receptor δ (PPARδ) modulator with EC50s of 0.4 nM, 7.9 nM and 10 nM for human, mouse and rat PPARδ, respectively. Potential treatment for Duchene Muscular Dystrophy (DMD) .
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- HY-W015828
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RGX-202; 3-Guanidinopropionic acid
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Apoptosis
Endogenous Metabolite
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Cancer
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Ompenaclid (RGX-202) is an oral small-molecule SLC6A8 transporter inhibitor. Ompenaclid robustly inhibits creatine import in vitro and in vivo, reduces intracellular phosphocreatine and ATP levels, and induces tumor apoptosis. Ompenaclid can be used for the research of cancer and duchenne muscular dystrophy .
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- HY-N1072R
-
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Calcium Channel
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Inflammation/Immunology
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Wilforgine (Standard) is the analytical standard of Wilforgine. This product is intended for research and analytical applications. Wilforgine is a bioactive sesquiterpene alkaloid in Tripterygium wilfordii Hook. F. Wilforgine can induce microstructural and ultrastructural changes in the muscles of Mythimna separata larvae, and the sites of action are proposed to be calcium receptors or channels in the muscular system .
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- HY-B1139S
-
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Isotope-Labeled Compounds
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Neurological Disease
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Tolperisone-d10 (hydrochloride) is the deuterium labeled Tolperisone hydrochloride. Tolperisone hydrochloride is a centrally acting muscle relaxant, is indicated for use in the treatment of pathologically increased tone of the cross-striated muscle caused by neurological diseases (damage of the pyramidal tract, multiple sclerosis, myelopathy, encephalomyelitis) and of spastic paralysis and other encephalopathies manifested with muscular dystonia.
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- HY-P99518
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BMS 986089; RG 6206; RO 7239361; BHV2000
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TGF-beta/Smad
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Others
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Taldefgrobep alfa (BMS 986089; RG 6206; RO 7239361) is a potent inhibitory antibody targeting to human myostatin. Taldefgrobep alfa is a fusion protein composed of a human IgG1-Fc domain and Adnectin domain. Taldefgrobep alfa can be used for spinal muscular atrophy (SMA) research .
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- HY-112980A
-
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DNA/RNA Synthesis
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Inflammation/Immunology
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Nusinersen sodium is an antisense oligonucleotide agent that modifies pre–messenger RNA splicing of the SMN2 gene and thus promotes increased production of full-length SMN protein .
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- HY-112980
-
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DNA/RNA Synthesis
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Inflammation/Immunology
|
Nusinersen is an antisense oligonucleotide agent that modifies pre–messenger RNA splicing of the SMN2 gene and thus promotes increased production of full-length SMN protein .
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- HY-B0262S1
-
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Sodium Channel
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Neurological Disease
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Methocarbamol-d3 is the deuterium labeled Methocarbamol. Methocarbamol is an orally active central muscle relaxant and blocks muscular Nav1.4 channel. Methocarbamol reversibly affects voltage dependence of inactivation of Nav1.4 channel. Methocarbamol has the potential for muscle spasms and pain syndromes research[1][2][3].
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- HY-B0262R
-
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Sodium Channel
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Neurological Disease
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Methocarbamol (Standard) is the analytical standard of Methocarbamol. This product is intended for research and analytical applications. Methocarbamol is an orally active central muscle relaxant and blocks muscular Nav1.4 channel. Methocarbamol reversibly affects voltage dependence of inactivation of Nav1.4 channel. Methocarbamol has the potential for muscle spasms and pain syndromes research .
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- HY-B0262S2
-
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Isotope-Labeled Compounds
Sodium Channel
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Neurological Disease
|
Methocarbamol- 13C,d3 is the 13C- and deuterium labeled Methocarbamol. Methocarbamol is an orally active central muscle relaxant and blocks muscular Nav1.4 channel. Methocarbamol reversibly affects voltage dependence of inactivation of Nav1.4 channel. Methocarbamol has the potential for muscle spasms and pain syndromes research[1][2][3].
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- HY-148799
-
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Myosin
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Others
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Sevasemten is an orally active allosteric inhibitor of skeletal muscle myosin that protects skeletal muscle from contraction-induced injury. Sevasemten exhibits selectively myosin inhibition with IC50s of ≤10 μM (skeletal), >100 μM (cardiac), respectively. Sevasemten decreases muscle damage biomarkers and fibrosis while increasing muscle strength and activity in in Duchenne muscular dystrophy disease models .
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- HY-147774
-
|
Cathepsin
|
Others
|
Cathepsin K inhibitor 6 (compound 19) is an inhibitor of cathepsin K (Cat K) with an IC50 of 17 nM. Cathepsin K inhibitor 6 also has inhibitory effects on other isoforms, with IC50s of 0.05 μM (Cat L) and 0.3 μM (Cat B), respectively .
|
-
- HY-111055
-
|
GSK-3
|
Neurological Disease
|
BIP-135 is a potent and selective ATP-competitive GSK-3 inhibitor, with IC50s of 16 nM and 21 nM for GSK-3α and GSK-3β, respectively. BIP 135 exhibits neuroprotective effect .
|
-
- HY-D1005A21
-
PEG-PPG-PEG, 6500 (Averag)
|
Biochemical Assay Reagents
Bacterial
|
Infection
|
Poloxamer 335 P105 is block polymer of polyoxyethylene and polyoxypropylene with average molecular mass of 6500. Poloxamer 335 P105 exhibits antimicrobial activity, that inihibits 86% Mycobacterium avium complex at concentration of 1 mg/mL. Poloxamer 334 P104 exhibits muscular toxicity. Poloxamer 334 P104 forms thermoreversible hydrogel, that is utilized in food additives, drug delivery carriers in cosmetics, pharmaceutical ingredients and tissue engineering .
|
-
- HY-124648
-
|
DNA/RNA Synthesis
|
Inflammation/Immunology
|
SMN-C2, an analog of RG-7916, is a selective modulator of SMN2 gene splicing that acts by binding SMN2 pre-mRNA, thereby increasing far upstream element binding protein 1 (FUBP1) and KH-spliced RNA binding Protein affinity regulator protein (KHSRP) to the SMN2 pre-mRNA complex. SMN-C2 can be used in spinal muscular atrophy (SMA) research .
|
-
- HY-153369
-
|
Guanylate Cyclase
|
Cardiovascular Disease
Neurological Disease
|
BAY-747 is an orally active and brain-penetrant stimulator of soluble guanylate cyclase (sGC). BAY-747 reverses L-NAME induced memory impairments and enhances cognition of rats in the object location task (OLT). BAY-747 also decreases blood pressure in both conscious normotensive and spontaneously hypertensive rats (SHR). BAY-747 improves function of the skeletal muscle associated with Duchenne muscular dystrophy (DMD) in mdx/mTRG2 mice model .
|
-
- HY-P1360
-
|
Drug Derivative
|
Metabolic Disease
|
H-D-MeAla-EtVaI-VaI-MeLeu-AIa-D-AIa-MeLeu-MeLeu-MeVaI-MeBmt(OAc)-Abu-O-CH2-CH2-NHMe is a nonimmunosuppressive cyclosporin A derivative. H-D-MeAla-EtVaI-VaI-MeLeu-AIa-D-AIa-MeLeu-MeLeu-MeVaI-MeBmt(OAc)-Abu-O-CH2-CH2-NHMe has the potential for the research of congenital muscular dystrophy .
|
-
- HY-127004
-
RGH-5002
|
Sodium Channel
|
Others
|
Silperisone hydrochloride is an organosilicone compound similar to tolperisone that has centrally acting muscle relaxant properties. Silperisone (hydrochloride) is a sodium channel protein type 2 alpha channel blocker that blocks sodium and calcium channels in cells, reduces muscle cell excitability and contraction, reduces peripheral tone, and acts as a muscle relaxant and peripheral vascular dilator. Silperisone (hydrochloride) is used to study recurrent painful myoclonus due to spinal cord injury, abnormal hypertonia due to cerebrovascular disease, myotonia symptoms, pyramidal tonia syndrome, multiple sclerosis myospasm, and myelitis .
|
-
- HY-123359
-
|
DNA/RNA Synthesis
|
Others
|
RTC14 is a read-through compound (RTC) that can induce ribosomes to bypass nonsense mutations in mRNA and allow the production of full-length functional proteins. RTC14 has the potential to be used in the research of various genetic disorders, such as nonsense mutations in the ataxia-telangiectasia mutated (ATM) gene and the dystrophin gene .
|
-
- HY-136340
-
|
Glucocorticoid Receptor
NF-κB
|
Metabolic Disease
Inflammation/Immunology
|
21-Acetoxypregna-1,4,9(11),16-tetraene-3,20-dione is an intermediate of delta 9,11 steroids synthesis, for example, Vamorolone (HY-109017). The delta 9,11 steroids are modifications of glucocorticoids and has anti-inflammatory properties. The delta 9,11 steroids are agents for protection against cell damage (lipid peroxidation) and inhibition of neovascularization .
|
-
- HY-P99370
-
LY2495655; Anti-GDF8 / Myostatin Reference Antibody (landogrozumab)
|
TGF-beta/Smad
|
Inflammation/Immunology
Cancer
|
Landogrozumab (LY2495655) is an humanized anti-myostatin monoclonal antibody. Landogrozumab effectively improves muscle volume, hand grip strength and function. Landogrozumab can be used for the research of muscle wasting disease .
|
-
- HY-120508
-
AN-9; Pivalyloxymethyl butyrate
|
HDAC
Bcr-Abl
Apoptosis
|
Inflammation/Immunology
Cancer
|
Pivanex (AN-9), a derivative of Butyric acid, is an orally active HDAC inhibitor. Pivanex down-regulates bcr-abl protein and enhances apoptosis. Pivanex has antimetastic and antiangiogenic properties .
|
-
- HY-147332
-
|
Liposome
|
Neurological Disease
|
TCL053 is an ionizable lipid carrier and used to introduce active components, in particular nucleic acids, into cells with excellent efriciency. TCL053, together with DPPC (Dipalmitoylphosphatidylcholine), PEG-DMG (Polyethylene glycoldimyristoyl glycerol), and cholesterol, forms lipid nanoparticle (LNP) which is able to deliver Cas9 mRNA and sgRNA into skeletal muscle .
|
-
-
-
HY-L086
-
|
2,733 compounds
|
Neurodegenerative diseases are incurable and life-threatening conditions that result in progressive degeneration and/or death of nerve cells. Some common neurodegenerative diseases include Alzheimer’s Disease (AD), Parkinson’s Disease (PD), Motor Neuron Disease (MND), Huntington’s Disease (HD), Spino-Cerebellar Ataxia (SCA), Spinal Muscular Atrophy (SMA), and Amyotrophic Lateral Sclerosis (ALS). Because the pathophysiology of neurodegenerative disorders is generally poorly understood, it is difficult to identify promising molecular targets and validate them. At the same time, about 85% of the drugs fail in clinical trials. Therefore, validating new targets and discovering new drugs to mitigate neurodegenerative disorders is need of the hour.
MCE offers a unique collection of 2,733 compounds with anti-Neurodegenerative Diseases activities or targeting the unique targets of neurodegenerative diseases. MCE Neurodegenerative Disease-related Compound Library is a useful tool for exploring the mechanism of neurodegenerative diseases and discovering new drugs for neurodegenerative diseases.
|
Cat. No. |
Product Name |
Type |
-
- HY-D1005A25
-
PEG-PPG-PEG, 5750 (Averag)
|
Co-solvents
|
Poloxamer 403 P123 is block polymer of polyoxyethylene and polyoxypropylene with average molecular mass of 5750. Poloxamer 403 P123 exhibits muscular toxicity .
|
-
- HY-147332
-
|
Drug Delivery
|
TCL053 is an ionizable lipid carrier and used to introduce active components, in particular nucleic acids, into cells with excellent efriciency. TCL053, together with DPPC (Dipalmitoylphosphatidylcholine), PEG-DMG (Polyethylene glycoldimyristoyl glycerol), and cholesterol, forms lipid nanoparticle (LNP) which is able to deliver Cas9 mRNA and sgRNA into skeletal muscle .
|
-
- HY-D1005A21
-
PEG-PPG-PEG, 6500 (Averag)
|
Co-solvents
|
Poloxamer 335 P105 is block polymer of polyoxyethylene and polyoxypropylene with average molecular mass of 6500. Poloxamer 335 P105 exhibits antimicrobial activity, that inihibits 86% Mycobacterium avium complex at concentration of 1 mg/mL. Poloxamer 334 P104 exhibits muscular toxicity. Poloxamer 334 P104 forms thermoreversible hydrogel, that is utilized in food additives, drug delivery carriers in cosmetics, pharmaceutical ingredients and tissue engineering .
|
Cat. No. |
Product Name |
Target |
Research Area |
-
- HY-P10242
-
|
TGF-beta/Smad
|
Others
|
Myostatin inhibitory peptide 7 is a 23 amino acids peptide, which is derived from amino acids 21 to 43 of the mouse myostatin prodomain. Myostatin inhibitory peptide 7 inhibits myostatin with Kd of 29.7 nM. Myostatin inhibitory peptide 7 can be used for researches of muscle atrophic disorders .
|
-
- HY-W019878
-
β-Lipotropin 61-91
|
Opioid Receptor
|
Cardiovascular Disease
Neurological Disease
|
β-Endorphin, rat (β-Lipotropin 61-91), a neuropeptide, is involved in cardiovascular regulation. β-Endorphin, rat induces marked, prolonged muscular rigidity and immobility similar to a catatonic state in rats .
|
-
- HY-P3712
-
|
Peptides
|
Cardiovascular Disease
Neurological Disease
|
Cardioexcitatory peptide 1 is a cardioexcitatory neuropeptide, can be isolated from Achatina atria. Cardioexcitatory peptide 1 has potent cardio-excitatory action on the hearts and also modifies the motility of muscular tissues and neural activities .
|
-
- HY-P5240
-
|
Peptides
|
Others
|
Acetyl tripeptide-30 citrulline is a bioactive peptide with anti-wrinkle effect and has been reported used as a cosmetic ingredient .
|
-
- HY-P1360
-
|
Drug Derivative
|
Metabolic Disease
|
H-D-MeAla-EtVaI-VaI-MeLeu-AIa-D-AIa-MeLeu-MeLeu-MeVaI-MeBmt(OAc)-Abu-O-CH2-CH2-NHMe is a nonimmunosuppressive cyclosporin A derivative. H-D-MeAla-EtVaI-VaI-MeLeu-AIa-D-AIa-MeLeu-MeLeu-MeVaI-MeBmt(OAc)-Abu-O-CH2-CH2-NHMe has the potential for the research of congenital muscular dystrophy .
|
Cat. No. |
Product Name |
Target |
Research Area |
-
- HY-P99588
-
MYO-029
|
TGF-β Receptor
|
Metabolic Disease
|
Stamulumab (MYO-029) is a recombinant human IgG1λ antibody that binds to myostatin and neutralizes its activity by preventing binding to its endogenous high-affinity receptor ActRIIB. Stamulumab leads to muscle fiber hypertrophy and not hyperplasia in SCID mice. Stamulumab has the potential for Becker muscular dystrophy (BMD), facioscapulohumeral dystrophy (FSHD), and limb-girdle muscular dystrophy (LGMD) research .
|
-
- HY-P99441
-
SRK-015
|
TGF-beta/Smad
|
Neurological Disease
|
Apitegromab (SRK-015) is an anti-promyostatin monoclonal antibody. Apitegromab can be used for the research of neuromuscular disease including spinal muscular atrophy .
|
-
- HY-P99857
-
PF-06252616
|
TGF-beta/Smad
|
Metabolic Disease
|
Domagrozumab is an anti-myostatin humanized monoclonal antibody with a KD value of 2.6 pM for human myostatin. Domagrozumab induces muscle anabolic activity. Domagrozumab can be used in research of duchenne muscular dystrophy (DMD) .
|
-
- HY-P99518
-
BMS 986089; RG 6206; RO 7239361; BHV2000
|
TGF-beta/Smad
|
Others
|
Taldefgrobep alfa (BMS 986089; RG 6206; RO 7239361) is a potent inhibitory antibody targeting to human myostatin. Taldefgrobep alfa is a fusion protein composed of a human IgG1-Fc domain and Adnectin domain. Taldefgrobep alfa can be used for spinal muscular atrophy (SMA) research .
|
-
- HY-P99370
-
LY2495655; Anti-GDF8 / Myostatin Reference Antibody (landogrozumab)
|
TGF-beta/Smad
|
Inflammation/Immunology
Cancer
|
Landogrozumab (LY2495655) is an humanized anti-myostatin monoclonal antibody. Landogrozumab effectively improves muscle volume, hand grip strength and function. Landogrozumab can be used for the research of muscle wasting disease .
|
Cat. No. |
Product Name |
Category |
Target |
Chemical Structure |
Cat. No. |
Product Name |
Chemical Structure |
-
- HY-B0262S1
-
|
Methocarbamol-d3 is the deuterium labeled Methocarbamol. Methocarbamol is an orally active central muscle relaxant and blocks muscular Nav1.4 channel. Methocarbamol reversibly affects voltage dependence of inactivation of Nav1.4 channel. Methocarbamol has the potential for muscle spasms and pain syndromes research[1][2][3].
|
-
-
- HY-B0262S
-
|
Methocarbamol-d5 is deuterium labeled Methocarbamol. Methocarbamol is an orally active central muscle relaxant and blocks muscular Nav1.4 channel[1].
|
-
-
- HY-B1139S
-
|
Tolperisone-d10 (hydrochloride) is the deuterium labeled Tolperisone hydrochloride. Tolperisone hydrochloride is a centrally acting muscle relaxant, is indicated for use in the treatment of pathologically increased tone of the cross-striated muscle caused by neurological diseases (damage of the pyramidal tract, multiple sclerosis, myelopathy, encephalomyelitis) and of spastic paralysis and other encephalopathies manifested with muscular dystonia.
|
-
-
- HY-B0262S2
-
|
Methocarbamol- 13C,d3 is the 13C- and deuterium labeled Methocarbamol. Methocarbamol is an orally active central muscle relaxant and blocks muscular Nav1.4 channel. Methocarbamol reversibly affects voltage dependence of inactivation of Nav1.4 channel. Methocarbamol has the potential for muscle spasms and pain syndromes research[1][2][3].
|
-
Cat. No. |
Product Name |
|
Classification |
-
- HY-16361A
-
CGP3466B; CGP3446 maleate; TCH346 maleate
|
|
Alkynes
|
Omigapil maleate, an orally bioavailable GAPDH nitrosylation inhibitor, abrogates Aβ1-42-induced tau acetylation, memory impairment, and locomotor dysfunction in mice. Omigapil maleate has the potential for the research of Alzheimer's disease . Omigapil maleate (CGP3446B maleate) is a apoptosis inhibitor. Omigapil maleate can be used for the research of congenital muscular dystrophy (CMD) . Omigapil (maleate) is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
|
Cat. No. |
Product Name |
|
Classification |
-
- HY-108753A
-
AVI 4658 sodium
|
|
Antisense Oligonucleotides
|
Eteplirsen (AVI 4658) sodium is a synthetic antisense oligonucleotide that induces dystrophin production. Eteplirsen (AVI 4658) sodium promotes exon 51 skipping in Duchenne muscular dystrophy patients and can be used in Duchenne muscular dystrophy research .
|
-
- HY-108753
-
AVI 4658
|
|
Antisense Oligonucleotides
|
Eteplirsen (AVI 4658) is a synthetic antisense oligonucleotide. Eteplirsen can be used for Duchenne muscular dystrophy research .
|
-
- HY-132611A
-
SRP-4053 sodium
|
|
Antisense Oligonucleotides
|
Golodirsen sodium is a phosphorodiamidate morpholino oligomer (PMO) that specifically targets exon 53 of dystrophin pre-mRNA. Golodirsen sodium can be used for the research of Duchenne muscular dystrophy (DMD) .
|
-
- HY-127137A
-
Adenylosuccinate tetraammonium; Aspartyl adenylate tetraammonium
|
|
Nucleotides and their Analogs
|
Adenylosuccinic acid tetraammonium (Adenylosuccinate; Aspartyl adenylate) is an orally active purine ribonucleoside monophosphate and plays a role in nucleotide cycle metabolite. Adenylosuccinic acid tetraammonium can be converted into fumaric acid through adenylosuccinate lyase. Adenylosuccinic acid tetraammonium has the potential for the study of duchenne muscular dystrophy(DMD) .
|
-
- HY-132584A
-
SRP-4045 sodium
|
|
Antisense Oligonucleotides
|
Casimersen sodium is an antisense oligonucleotide of the phosphorodiamidate morpholino oligomer subclass. Casimersen sodium binds to exon 45 of dystrophin pre-mRNA, restores the open-reading frame (by skipping exon 45) resulting in the production of an internally truncated but functional dystrophin protein. Casimersen sodium can be used for the research of Duchenne muscular dystrophy (DMD) .
|
-
- HY-132592A
-
WVE-210201 sodium
|
|
Antisense Oligonucleotides
|
Suvodirsen sodium induces exon 51 skipping and has the potential for study Duchenne muscular dystrophy (DMD) .
|
-
- HY-132592
-
WVE-210201
|
|
Antisense Oligonucleotides
|
Suvodirsen (WVE-210201) is a oligonucleotide. Suvodirsen has the potential for study Duchenne muscular dystrophy (DMD) .
|
-
- HY-132585A
-
Vesleteplirsen sodium
|
|
Antisense Oligonucleotides
|
SRP-5051 sodium is a next-generation antisense oligonucleotide of peptide phosphorodiamidate morpholino oligomer (PPMO). SRP-5051 targeting exon 51 skipping in Duchenne muscular dystrophy (DMD) .
|
-
- HY-132611
-
SRP-4053
|
|
Antisense Oligonucleotides
|
Golodirsen (SRP-4053) is a phosphorodiamidate morpholino oligomer (PMO) that specifically targets exon 53 of dystrophin pre-mRNA. Golodirsen can be used for the research of Duchenne muscular dystrophy (DMD) .
|
-
- HY-132584
-
SRP-4045
|
|
Antisense Oligonucleotides
|
Casimersen (SRP-4045) is an antisense oligonucleotide of the phosphorodiamidate morpholino oligomer subclass. Casimersen binds to exon 45 of dystrophin pre-mRNA, restores the open-reading frame (by skipping exon 45) resulting in the production of an internally truncated but functional dystrophin protein. Casimersen can be used for the research of Duchenne muscular dystrophy (DMD) .
|
-
- HY-132586
-
NS-065/NCNP-01
|
|
Antisense Oligonucleotides
|
Viltolarsen (NS-065/NCNP-01) is a phosphorodiamidate morpholino antisense oligonucleotide. Viltolarsen binds to exon 53 of the dystrophin mRNA precursor and restores the amino acid open-reading frame by skipping exon 53, resulting in the production of a shortened dystrophin protein that contains essential functional portions. Viltolarsen has the potential for Duchenne muscular dystrophy (DMD) research .
|
-
- HY-132586A
-
NS-065/NCNP-01 sodium
|
|
Antisense Oligonucleotides
|
Viltolarsen (NS-065/NCNP-01) sodium is a phosphorodiamidate morpholino antisense oligonucleotide. Viltolarsen sodium binds to exon 53 of the dystrophin mRNA precursor and restores the amino acid open-reading frame by skipping exon 53, resulting in the production of a shortened dystrophin protein that contains essential functional portions. Viltolarsen sodium has the potential for Duchenne muscular dystrophy (DMD) research .
|
-
- HY-153324
-
|
|
Antisense Oligonucleotides
|
PS220 (sodium) is an antisense RNA oligonucleotides. PS220 (sodium) can be used for research of treating muscular dystrophy .
|
-
- HY-145724A
-
Kyndrisa sodium; GSK2402968A sodium; PRO051 sodium
|
|
Antisense Oligonucleotides
|
Drisapersen sodium, a antisense oligonucleotide, induces exon 51 skipping during dystrophin pre-mRNA splicing and allows synthesis of partially functional dystrophin in Duchenne muscular dystrophy (DMD) patients with amenable mutations.
|
-
- HY-145724
-
Kyndrisa; GSK2402968A; PRO051
|
|
Antisense Oligonucleotides
|
Drisapersen, a antisense oligonucleotide, induces exon 51 skipping during dystrophin pre-mRNA splicing and allows synthesis of partially functional dystrophin in Duchenne muscular dystrophy (DMD) patients with amenable mutations.
|
-
- HY-150237
-
|
|
Antisense Oligonucleotides
|
FITC-labeled Drisapersen (sodium) is Drisapersen labeled with FITC. Drisapersen, a antisense oligonucleotide, induces exon 51 skipping during dystrophin pre-mRNA splicing and allows synthesis of partially functional dystrophin in Duchenne muscular dystrophy (DMD) patients with amenable mutations.
|
-
- HY-112980A
-
|
|
Antisense Oligonucleotides
|
Nusinersen sodium is an antisense oligonucleotide agent that modifies pre–messenger RNA splicing of the SMN2 gene and thus promotes increased production of full-length SMN protein .
|
-
- HY-112980
-
|
|
Antisense Oligonucleotides
|
Nusinersen is an antisense oligonucleotide agent that modifies pre–messenger RNA splicing of the SMN2 gene and thus promotes increased production of full-length SMN protein .
|
-
- HY-147332
-
|
|
Cationic Lipids
|
TCL053 is an ionizable lipid carrier and used to introduce active components, in particular nucleic acids, into cells with excellent efriciency. TCL053, together with DPPC (Dipalmitoylphosphatidylcholine), PEG-DMG (Polyethylene glycoldimyristoyl glycerol), and cholesterol, forms lipid nanoparticle (LNP) which is able to deliver Cas9 mRNA and sgRNA into skeletal muscle .
|
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